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/*=========================================================================
 *
 *  Copyright Insight Software Consortium
 *
 *  Licensed under the Apache License, Version 2.0 (the "License");
 *  you may not use this file except in compliance with the License.
 *  You may obtain a copy of the License at
 *
 *         http://www.apache.org/licenses/LICENSE-2.0.txt
 *
 *  Unless required by applicable law or agreed to in writing, software
 *  distributed under the License is distributed on an "AS IS" BASIS,
 *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 *  See the License for the specific language governing permissions and
 *  limitations under the License.
 *
 *=========================================================================*/
#ifndef itkPointSetToImageMetric_h
#define itkPointSetToImageMetric_h

#include "itkImageBase.h"
#include "itkTransform.h"
#include "itkInterpolateImageFunction.h"
#include "itkSingleValuedCostFunction.h"
#include "itkMacro.h"
#include "itkGradientRecursiveGaussianImageFilter.h"

namespace itk
{
/** \class PointSetToImageMetric
 * \brief Computes similarity between a point set and an image.
 *
 * This Class is templated over the type of the input point-set and image.  It
 * expects a Transform and an Interpolator to be plugged in.  This particular
 * class is the base class for a hierarchy of similarity metrics.
 *
 * This class computes a value that measures the similarity between the values
 * associated with points in the point set and the transformed Moving image.
 * The Interpolator is used to compute intensity values on non-grid positions
 * resulting from mapping points through the Transform.
 *
 * \ingroup RegistrationMetrics
 *
 * \ingroup ITKRegistrationCommon
 */

template< typename TFixedPointSet,  typename TMovingImage >
class PointSetToImageMetric:public SingleValuedCostFunction
{
public:
  /** Standard class typedefs. */
  typedef PointSetToImageMetric      Self;
  typedef SingleValuedCostFunction   Superclass;
  typedef SmartPointer< Self >       Pointer;
  typedef SmartPointer< const Self > ConstPointer;

  /** Type used for representing point components  */
  typedef Superclass::ParametersValueType CoordinateRepresentationType;

  /** Run-time type information (and related methods). */
  itkTypeMacro(PointSetToImageMetric, SingleValuedCostFunction);

  /**  Type of the moving Image. */
  typedef TMovingImage                           MovingImageType;
  typedef typename TMovingImage::PixelType       MovingImagePixelType;
  typedef typename MovingImageType::ConstPointer MovingImageConstPointer;

  /**  Type of the fixed Image. */
  typedef TFixedPointSet                           FixedPointSetType;
  typedef typename FixedPointSetType::ConstPointer FixedPointSetConstPointer;

  /** Constants for the image dimensions */
  itkStaticConstMacro(MovingImageDimension, unsigned int,
                      TMovingImage::ImageDimension);
  itkStaticConstMacro(FixedPointSetDimension, unsigned int,
                      TFixedPointSet::PointDimension);

  typedef typename FixedPointSetType::PointsContainer::ConstIterator    PointIterator;
  typedef typename FixedPointSetType::PointDataContainer::ConstIterator PointDataIterator;

  /**  Type of the Transform Base class */
  typedef Transform< CoordinateRepresentationType,
                     itkGetStaticConstMacro(MovingImageDimension),
                     itkGetStaticConstMacro(FixedPointSetDimension) > TransformType;

  typedef typename TransformType::Pointer         TransformPointer;
  typedef typename TransformType::InputPointType  InputPointType;
  typedef typename TransformType::OutputPointType OutputPointType;
  typedef typename TransformType::ParametersType  TransformParametersType;
  typedef typename TransformType::JacobianType    TransformJacobianType;

  /**  Type of the Interpolator Base class */
  typedef InterpolateImageFunction<
    MovingImageType,
    CoordinateRepresentationType > InterpolatorType;

  /** Gaussian filter to compute the gradient of the Moving Image */
  typedef typename NumericTraits< MovingImagePixelType >::RealType RealType;
  typedef CovariantVector< RealType,
                           itkGetStaticConstMacro(MovingImageDimension) > GradientPixelType;
  typedef Image< GradientPixelType,
                 itkGetStaticConstMacro(MovingImageDimension) > GradientImageType;
  typedef SmartPointer< GradientImageType > GradientImagePointer;
  typedef GradientRecursiveGaussianImageFilter< MovingImageType,
                                                GradientImageType >
  GradientImageFilterType;

  typedef typename GradientImageFilterType::Pointer GradientImageFilterPointer;

  typedef typename InterpolatorType::Pointer InterpolatorPointer;

  /**  Type of the measure. */
  typedef Superclass::MeasureType MeasureType;

  /**  Type of the derivative. */
  typedef Superclass::DerivativeType DerivativeType;

  /**  Type of the parameters. */
  typedef Superclass::ParametersType ParametersType;

  /** Get/Set the Fixed Image.  */
  itkSetConstObjectMacro(FixedPointSet, FixedPointSetType);
  itkGetConstObjectMacro(FixedPointSet, FixedPointSetType);

  /** Get/Set the Moving Image.  */
  itkSetConstObjectMacro(MovingImage, MovingImageType);
  itkGetConstObjectMacro(MovingImage, MovingImageType);

  /** Connect the Transform. */
  itkSetObjectMacro(Transform, TransformType);

  /** Get a pointer to the Transform.  */
  itkGetModifiableObjectMacro(Transform, TransformType);

  /** Connect the Interpolator. */
  itkSetObjectMacro(Interpolator, InterpolatorType);

  /** Get a pointer to the Interpolator.  */
  itkGetModifiableObjectMacro(Interpolator, InterpolatorType);

  /** Get Gradient Image. */
  itkGetModifiableObjectMacro(GradientImage, GradientImageType);

  /** Get the number of pixels considered in the computation. */
  itkGetConstReferenceMacro(NumberOfPixelsCounted, SizeValueType);

  /** Set the parameters defining the Transform. */
  void SetTransformParameters(const ParametersType & parameters) const;

  /** Set/Get the flag for computing the image gradient.
   *  When ON the metric derivative is computed using the Jacobian of the
   *  transformation and the image gradient. When OFF the metric derivative
   *  is computed by finite differences. Mode ON results in higher speed
   *  at the price of large memory footprint. Mode OFF results in small
   *  memory footprint at the price of large computation time
   */
  itkSetMacro(ComputeGradient, bool);
  itkGetConstReferenceMacro(ComputeGradient, bool);

  /** Return the number of parameters required by the Transform */
  virtual unsigned int GetNumberOfParameters(void) const ITK_OVERRIDE
  { return m_Transform->GetNumberOfParameters(); }

  /** Initialize the Metric by making sure that all the components
   *  are present and plugged together correctly     */
  virtual void Initialize(void)
  throw ( ExceptionObject );

protected:
  PointSetToImageMetric();
  virtual ~PointSetToImageMetric() {}
  virtual void PrintSelf(std::ostream & os, Indent indent) const ITK_OVERRIDE;

  mutable SizeValueType m_NumberOfPixelsCounted;

  FixedPointSetConstPointer m_FixedPointSet;

  MovingImageConstPointer m_MovingImage;

  mutable TransformPointer m_Transform;

  InterpolatorPointer m_Interpolator;

  bool m_ComputeGradient;

  GradientImagePointer m_GradientImage;

private:
  PointSetToImageMetric(const Self &) ITK_DELETE_FUNCTION;
  void operator=(const Self &) ITK_DELETE_FUNCTION;
};
} // end namespace itk

#ifndef ITK_MANUAL_INSTANTIATION
#include "itkPointSetToImageMetric.hxx"
#endif

#endif